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March 26, 2026The Proceedings of Mechanical Engineering Congress Japan0 citationsOpen Access

Evaluation of the Influence of Material Model’s Parameters on the Elastic-Plastic Behavior of Pipe Support Structures

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TKTogo KOZUKAINIzumi NAKAMURA

Key Points

  • This research aims to assess how material model parameters affect the elastic-plastic behavior of pipe supports within seismic design frameworks.
  • Developed finite element analysis models for cantilever and frame type piping support structures.
  • Utilized ANSYS software for the analysis process.
  • Evaluated the impact of material model parameters on the elastic-plastic response.
  • Yield stress significantly affects the restoring force characteristics in both support types.
  • Yield displacement variations were notable only in frame type supports due to multiple plastic deformation locations.

Abstract

This study aims to develop a new seismic design methodology incorporating elastic-plastic response analysis of piping systems, including piping support structures. To evaluate the inelastic behavior of pipe support structures, elastic-plastic finite element analysis models were constructed. Cantilever and frame type piping support structures were analyzed using ANSYS software, and the effect of the material model on the analysis results was evaluated. As a result, it was confirmed that the yield stress considerably influences the restoring force characteristics in both the cantilever and frame type supports. In addition, a significant effect on the yield displacement was observed only in the frame type support, which has multiple dominant plastic deformation locations.

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Cite This Study

KOZUKA et al. (2025) studied this question.

synapsesocial.com/papers/69c4cd25fdc3bde4489191a3https://doi.org/10.1299/jsmemecj.2025.j101p-04
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Study on Elastic-Plastic Design Method for Piping Supports With Outer Diagonal Brace Considering Variation of Material Properties2025
  2. 2Proposal of a Nonlinear Spring Model on Piping Support Structures for an Elastoplastic Response Analysis Method2024
  3. 3Elastic-Plastic Seismic Response Analysis of Piping System Considering Damage to Piping Support2025
  4. 4Simplified Elastic-Plastic Modeling for Fatigue Analysis of Piping Systems in Seismic PRA2025
  5. 5A Post-Treatment of a Conventional Analysis to Represent Elastoplastic Behaviour of Piping Systems Under High Seismic Load2025